López-Estraño C, Tschudi C, Ullu E
Departments of Internal Medicine, Yale University School of Medicine, New Haven, Connecticut 06520-8022, USA.
Mol Cell Biol. 1998 Aug;18(8):4620-8. doi: 10.1128/MCB.18.8.4620.
Previous studies have identified a conserved AG dinucleotide at the 3' splice site (3'SS) and a polypyrimidine (pPy) tract that are required for trans splicing of polycistronic pre-mRNAs in trypanosomatids. Furthermore, the pPy tract of the Trypanosoma brucei alpha-tubulin 3'SS region is required to specify accurate 3'-end formation of the upstream beta-tubulin gene and trans splicing of the downstream alpha-tubulin gene. Here, we employed an in vivo cis competition assay to determine whether sequences other than those of the AG dinucleotide and the pPy tract were required for 3'SS identification. Our results indicate that a minimal alpha-tubulin 3'SS, from the putative branch site region to the AG dinucleotide, is not sufficient for recognition by the trans-splicing machinery and that polyadenylation is strictly dependent on downstream trans splicing. We show that efficient use of the alpha-tubulin 3'SS is dependent upon the presence of exon sequences. Furthermore, beta-tubulin, but not actin exon sequences or unrelated plasmid sequences, can replace alpha-tubulin exon sequences for accurate trans-splice-site selection. Taken together, these results support a model in which the informational content required for efficient trans splicing of the alpha-tubulin pre-mRNA includes exon sequences which are involved in modulation of trans-splicing efficiency. Sequences that positively regulate trans splicing might be similar to cis-splicing enhancers described in other systems.
先前的研究已经在3'剪接位点(3'SS)鉴定出一个保守的AG二核苷酸和一个多嘧啶(pPy)序列,它们是锥虫多顺反子前体mRNA反式剪接所必需的。此外,布氏锥虫α-微管蛋白3'SS区域的pPy序列对于确定上游β-微管蛋白基因准确的3'末端形成以及下游α-微管蛋白基因的反式剪接是必需的。在这里,我们采用体内顺式竞争试验来确定3'SS识别是否需要AG二核苷酸和pPy序列以外的其他序列。我们的结果表明,从假定的分支位点区域到AG二核苷酸的最小α-微管蛋白3'SS不足以被反式剪接机制识别,并且聚腺苷酸化严格依赖于下游的反式剪接。我们表明,α-微管蛋白3'SS的有效利用取决于外显子序列的存在。此外,β-微管蛋白外显子序列,而不是肌动蛋白外显子序列或无关的质粒序列,可以替代α-微管蛋白外显子序列用于准确的反式剪接位点选择。综上所述,这些结果支持了一个模型,其中α-微管蛋白前体mRNA有效反式剪接所需的信息内容包括参与调节反式剪接效率的外显子序列。正向调节反式剪接的序列可能类似于其他系统中描述的顺式剪接增强子。